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    • 11. 发明授权
    • Terminal box and a method of providing it
    • 接线盒和一种提供它的方法
    • US07369398B2
    • 2008-05-06
    • US11194413
    • 2005-08-01
    • Makoto HigashikozonoHiroyuki YoshikawaKazuki Naito
    • Makoto HigashikozonoHiroyuki YoshikawaKazuki Naito
    • H05K7/20H01R12/00
    • H05K7/209H01L2924/0002H02S40/34H01L2924/00
    • Terminal plates (30) are juxtaposed on a base plate (11) for electrically connecting positive and negative electrodes of a solar battery module (90) to cables (80) for external connection. A rectifying device (50) spans between adjacent terminal plates (30). Each rectifying device (50) has a bypass diode (52) and a metal clip (53) resiliently holds the bypass diode (52). A heat discharging sheet (40) is attached to the lower surface of the clip (53) for discharging heat generated by the bypass diode (52). Heat discharged from a heat discharging surface (40A) of the heat discharging sheet (40) is received by a heat receiving surface (90A) of the solar battery module (90) via a through hole (11B) formed in the base plate (11) and is discharged efficiently from the solar battery module (90).
    • 端子板(30)并置在基板(11)上,用于将太阳能电池模块(90)的正极和负极电连接到用于外部连接的电缆(80)。 整流装置(50)跨越相邻的端子板(30)。 每个整流装置(50)具有旁路二极管(52)和金属夹(53)弹性地保持旁路二极管(52)。 散热片(40)安装在夹子(53)的下表面,用于排出由旁路二极管(52)产生的热量。 从放热片(40)的放热面(40A)排出的热量经由形成于基座(40)的通孔(11B)被太阳能电池模块(90)的受热面(90A) 板(11),并且从太阳能电池模块(90)有效地排出。
    • 12. 发明申请
    • Vehicle management system
    • 车辆管理系统
    • US20070100687A1
    • 2007-05-03
    • US10580189
    • 2004-11-16
    • Hiroyuki Yoshikawa
    • Hiroyuki Yoshikawa
    • G07B15/00G07B15/02G08G1/065G08G1/01
    • G07B15/063G06Q30/0284
    • A vehicle management system is disclosed that can eliminate user dissatisfaction with toll collection at a time of traffic congestion and improve driving safety. In this system, when a vehicle (101) with an on-board communication terminal apparatus (102) passes through gates (103, 106) provided at the entrance and exit of a toll road and gates (104, 105) provided at the entrance and exit of a service area (parking area), the times of passage of the vehicle (101) through the gates are detected by detection apparatuses (107 through 110) installed at the gates, and a central control apparatus (111) calculates a toll according to the time during which the toll road is used excluding time spent at the service area, and the distance traveled on the toll road, based on the times of passage through the gates.
    • 公布了一种车辆管理系统,可以消除用户对交通拥堵时收费的不满,提高行车安全性。 在该系统中,当具有车载通信终端装置(102)的车辆(101)通过设置在收费公路的入口和出口处的门(103,106)和设置在入口处的门(104,105)时 并且在服务区域(停车区域)的出口,通过门的车辆(101)的通过时间由安装在门口的检测装置(107〜110)进行检测,中央控制装置(111)计算通行费 根据使用收费公路的时间,不包括在服务区内花费的时间,以及收费公路上行驶的距离,根据通过大门的时间。
    • 13. 发明授权
    • Frequency modulation apparatus
    • 调频装置
    • US07199677B2
    • 2007-04-03
    • US11080680
    • 2005-03-16
    • Hiroyuki YoshikawaHisashi AdachiShunsuke Hirano
    • Hiroyuki YoshikawaHisashi AdachiShunsuke Hirano
    • H03C3/06
    • H03C3/0933H03C3/0925H04L27/12H04L27/2003
    • A frequency modulation apparatus 100 has a synthesizer 101, a differentiator 102 that differentiates phase modulation data and generates differential phase modulation data, an adder 103 that adds together that differential phase modulation data and carrier frequency data fractional part K and generates addition fractional part K1, an input data operation section 104 that receives addition fractional part K1 and carrier frequency data integer part M, generates integer part input data M1 and fractional part input data K2, and provides fractional part input data K2 to synthesizer 101, and an integer part data delay section 105 that delays integer part input data M1 before providing it to synthesizer 101. Input data operation section 104 makes M1=M−1 and K2=K1+1 when K1
    • 频率调制装置100具有合成器101,微分器102,其对相位调制数据进行微分并产生差分相位调制数据;加法器103,将差分相位调制数据和载波频率数据小数部分K相加,生成加法分数部分K 1 ,接收加法分数部分K 1和载波频率数据整数部分M的输入数据操作部分104产生整数部分输入数据M 1和小数部分输入数据K 2,并向合成器101提供分数部分输入数据K 2,以及 整数部分数据延迟部分105,其在将整数部分输入数据M 1提供给合成器101之前将其延迟。 当K 1 <0时,输入数据运算部104使M 1 = M-1,K 2 = K 1 +1,当0 <= K 1 <1时,M 1 = M,K 2 = K 1,使M 1 = 1 + = 1,K 2 = K 1 -1。
    • 19. 发明授权
    • Image forming apparatus having self-repair function and self-repair
method for the apparatus
    • 具有自修复功能的图像形成装置和装置的自修复方法
    • US5446523A
    • 1995-08-29
    • US132351
    • 1993-10-06
    • Yoshiki ShimomuraSadao TanigawaYasushi UmedaTetsuo TomiyamaHiroyuki Yoshikawa
    • Yoshiki ShimomuraSadao TanigawaYasushi UmedaTetsuo TomiyamaHiroyuki Yoshikawa
    • G06F9/44G03G15/00G03G21/00G06F11/22H04N1/00
    • G03G15/55G06F11/22G03G2215/00118G06F2201/815
    • In an image forming apparatus according to the present invention, a software portion incorporated in the apparatus is provided with a virtual case storage portion 12, to previously create virtual cases by a virtual case compiler 16 outside of the apparatus and store the virtual cases. Fault diagnosis is made by comparing fuzzy qualitative values into which the values of sensors are converted on the basis of fuzzy membership functions with the virtual cases. If a fault is diagnosed as a result of the comparison, repair operations for repairing the fault are read out from a work script table 15. In this case, operation information for repair are stored to correspond to each of a plurality of domains into which a state space which the apparatus can take up is divided. Accordingly, it is possible to correctly read out corresponding repair operations from the work script table 15 depending on which of the domains is a domain to which the present state of the apparatus belongs. As a result, a self-repair system can be constructed as a practical built-in type system, thereby to make it possible to reduce the scale of the system related to the fault diagnosis as well as to reduce time required for the fault repair.
    • 在根据本发明的图像形成装置中,包含在装置中的软件部分设置有虚拟盒存储部分12,以预先通过设备外的虚拟案例编辑器16创建虚拟案例并存储虚拟案例。 通过比较基于模糊隶属函数与虚拟案例将传感器值转换成的模糊定性值进行故障诊断。 如果作为比较的结果诊断故障,则从工作脚本表15读出用于修复故障的修复操作。在这种情况下,存储用于修复的操作信息以对应于多个域中的每一个,其中 设备可以占用的状态空间是分开的。 因此,根据哪个域是设备的当前状态所属的域,可以从工作脚本表15正确读出相应的修复操作。 因此,可以将自修复系统构建为实用的内置式系统,从而可以减少与故障诊断相关的系统的规模,并且减少故障修复所需的时间。
    • 20. 发明申请
    • RADIO TRANSMITTING/RECEIVING CIRCUIT, WIRELESS COMMUNICATION APPARATUS, AND RADIO TRANSMITTING/RECEIVING METHOD
    • 无线电发射/接收电路,无线通信装置和无线电发射/接收方法
    • US20120020391A1
    • 2012-01-26
    • US13262063
    • 2010-03-26
    • Hiroyuki Yoshikawa
    • Hiroyuki Yoshikawa
    • H04B1/38
    • H04W52/029H04W52/0203H04W52/0251H04W72/12H04W88/06Y02D70/1242Y02D70/1262Y02D70/142Y02D70/144
    • A radio transmitting/receiving circuit, a wireless communication apparatus and a radio transmitting/receiving method wherein low power consumption can be achieved without complicating software even if a plurality of communication systems are applied. In a control unit (117) of a radio transmitting/receiving circuit (103), according to a communication system applied to a radio transmitting/receiving unit, a clock control unit (122) selects a clock frequency; a program decoder (125) adjusts information included in a transmission/reception program and related to the execution timing of the transmission/reception program for the radio transmitting/receiving unit; and a timing control unit (123) controls the execution timing on the basis of the adjusted information related to the execution timing. Specifically, the information related to the execution timing includes a bit sequence indicating an ON/OFF timing for the radio transmitting/receiving unit in accordance with a first communication system, and the program decoder (125) bit-shifts the bit sequence if a second communication system different from the first communication system is applied to the radio transmitting/receiving unit.
    • 无线发送/接收电路,无线通信装置和无线电发送/接收方法,即使应用了多个通信系统,也可以实现低功耗而不使软件复杂化。 在无线电发射/接收电路(103)的控制单元(117)中,根据应用于无线电发射/接收单元的通信系统,时钟控制单元(122)选择时钟频率; 程序解码器(125)调整包含在发送/接收程序中并与无线电发送/接收单元的发送/接收程序的执行定时有关的信息; 并且定时控制单元(123)基于与执行定时相关的调整后的信息来控制执行定时。 具体地,与执行定时有关的信息包括指示根据第一通信系统的无线电发送/接收单元的开/关定时的位序列,并且如果第二通信系统,则程序解码器(125)对位序列进行位移位 与第一通信系统不同的通信系统被应用于无线电发送/接收单元。